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首页> 外文期刊>Journal of Hazardous Materials >Removal of lead(Ⅱ) by adsorption using treated granular activated carbon: Batch and column studies
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Removal of lead(Ⅱ) by adsorption using treated granular activated carbon: Batch and column studies

机译:处理后的颗粒状活性炭吸附去除铅(Ⅱ):分批和柱研究

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In the present study, a deeper understanding of adsorption behavior of Pb(Ⅱ) from aqueous systems onto activated carbon and treated activated carbon has been attempted via static and column mode studies under various conditions. It probes mainly two adsorbents that is, activated carbon (AC) and modified activated carbon (AC-S). Characterization of both the adsorbents was one of the key focal areas of the present study. This has shown a clear change or demarcation in the various physical and chemical properties of the modified adsorbent from its precursor activated carbon. Both the adsorbents are subjected to static mode adsorption studies and then after a comparison based on isotherm analysis; more efficient adsorbent is screened for column mode adsorption studies. The lead removal increased for sample of treated carbon. The extent of Pb(Ⅱ) removal was found to be higher in the treated activated carbon. The aim of carrying out the continuous-flow studies was to assess the effect of various process variables, viz., of bed height, hydraulic loading rate and initial feed concentration on breakthrough time and adsorption capacity. This has helped in ascertaining the practical applicability of the adsorbent. Breakthrough curves were plotted for the adsorption of lead on the adsorbent using continuous-flow column operation by varying different operating parameters like hydraulic loading rate (3.0-10.5 m~3/(h m~2)), bed height (0.3-0.5 m) and feed concentrations (2.0-6.0 mg/l). At the end, an attempt has also been made to model the data generated from column studies using the empirical relationship based on Bohart-Adams model. This model has provided an objective framework to the subjective interpretation of the adsorption system and the model constant obtained here can be used to achieve the ultimate objective of our study that is, up scaling and designing of adsorption process at the pilot plant scale level. AC-S column regeneration using 0.5 and 1.0 M concentration of HNO_3 has been investigated. It has shown a regeneration efficiency of 52.0% with 0.5 M HNO_3.
机译:在本研究中,通过各种条件下的静态和柱模式研究,试图更深入地了解Pb(Ⅱ)从水性体系到活性炭和经处理的活性炭的吸附行为。它主要探测两种吸附剂,即活性炭(AC)和改性活性炭(AC-S)。两种吸附剂的表征是本研究的重点领域之一。这表明改性吸附剂的各种物理和化学性质与其前体活性炭有着明显的变化或分界。两种吸附剂均经过静态吸附研究,然后根据等温线分析进行比较;筛选更有效的吸附剂用于柱模式吸附研究。对于处理过的碳样品,铅去除率增加。处理后的活性炭中Pb(Ⅱ)的去除率较高。进行连续流研究的目的是评估各种工艺变量,即床高,水力加载速率和初始进料浓度对突破时间和吸附能力的影响。这有助于确定吸附剂的实际适用性。通过改变不同的操作参数,例如水力加载速率(3.0-10.5 m〜3 /(hm〜2)),床高(0.3-0.5 m),绘制了连续流柱操作下吸附剂上铅吸附的突破曲线。和饲料浓度(2.0-6.0 mg / l)。最后,还尝试使用基于Bohart-Adams模型的经验关系对从柱研究生成的数据进行建模。该模型为吸附系统的主观解释提供了客观的框架,此处获得的模型常数可用于实现我们研究的最终目的,即在试验工厂规模的规模上扩大规模和设计吸附过程。研究了使用0.5和1.0 M浓度的HNO_3进行AC-S柱再生。在0.5 M HNO_3下,再生效率为52.0%。

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